. Carnegie Institution of Washington publication. The Absorpt 'on Coefficient of Solution for Monochromatic Radiation. 43 TABLE 15.—A for Cobalt Nitrate in Water. e= c = Wave-length. Houstoun. From table 14. Houstoun. Remarks. 684 720 .010 .0102 .010 750 .010 .0082 .009 No 794 .012 .0091 .012 data for 850 .013 .0125 .016 comparison. 910 .018 .0181 .017 980 .033 .0256 .031 1056/i/i. .0200 _ .0100 . .5 C FIG. 13.—The A-c Curves for Cobalt Nitrate in Water. COBALT SULPHATE IN WATER. Seventeen solutions were prepared, varying in concentration from c =


. Carnegie Institution of Washington publication. The Absorpt 'on Coefficient of Solution for Monochromatic Radiation. 43 TABLE 15.—A for Cobalt Nitrate in Water. e= c = Wave-length. Houstoun. From table 14. Houstoun. Remarks. 684 720 .010 .0102 .010 750 .010 .0082 .009 No 794 .012 .0091 .012 data for 850 .013 .0125 .016 comparison. 910 .018 .0181 .017 980 .033 .0256 .031 1056/i/i. .0200 _ .0100 . .5 C FIG. 13.—The A-c Curves for Cobalt Nitrate in Water. COBALT SULPHATE IN WATER. Seventeen solutions were prepared, varying in concentration from c = to c = The A —c curves show that throughout the whole region of wave-lengths studied A is a constant for all values of Please note that these images are extracted from scanned page images that may have been digitally enhanced for readability - coloration and appearance of these illustrations may not perfectly resemble the original Carnegie Institution of Washington. Washington, Carnegie Institution of Washington


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